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Heterogeneous vs homogeneous MPSoC approaches for a Mobile LTE modem

机译:移动LTE调制解调器的异构和同类MPSoC方法

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Applications like 4G baseband modem require single-chip implementation to meet the integration and power consumption requirements. These applications demand a high computing performance with real-time constraints, low-power consumption and low cost. With the rapid evolution of telecom standards and the increasing demand for multi-standard products, the need for flexible baseband solutions is growing. The concept of Multi-Processor System-on-Chip (MPSoC) is well adapted to enable hardware reuse between products and between multiple wireless standards in the same device. Heterogeneous architectures are well known solutions but they have limited flexibility. Based on the experience of two heterogeneous Software Defined Radio (SDR) telecom chipsets, this paper presents the homoGENEous Processor arraY (GENEPY) platform for 4G applications. This platform is built with Smart ModEm Processors (SMEP) interconnected with a Network-on-Chip. The SMEP, implemented in 65nm low-power CMOS, can perform 3.2 GMAC/s with 77 GBits/s internal bandwidth at 400MHz. Two implementations of homogeneous GENEPY are compared to a heterogeneous platform in terms of silicon area, performance and power consumption. Results show that a homogeneous approach can be more efficient and flexible than a heterogeneous approach in the context of 4G Mobile Terminals.
机译:诸如4G基带调制解调器之类的应用需要单芯片实现才能满足集成度和功耗要求。这些应用要求具有实时约束,低功耗和低成本的高性能计算性能。随着电信标准的快速发展以及对多标准产品的需求不断增长,对灵活基带解决方案的需求正在增长。多处理器片上系统(MPSoC)的概念非常适合于实现产品之间以及同一设备中多个无线标准之间的硬件重用。异构体系结构是众所周知的解决方案,但灵活性有限。基于两个异构软件无线电(SDR)电信芯片组的经验,本文介绍了适用于4G应用的均质处理器ARAY(GENEPY)平台。该平台由智能ModEm处理器(SMEP)和片上网络互连而成。 SMEP采用65nm低功耗CMOS实现,在400MHz频率下可实现3.2 GMAC / s的内部带宽为77 GBits / s。就硅面积,性能和功耗而言,同类GENEPY的两种实现与异构平台进行了比较。结果表明,在4G移动终端的情况下,同质方法比异质方法更为有效和灵活。

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